Shibata Yoshiyuki, Imai Shingo, Nobutomo Tatsuya, Miyoshi Tasuku, Yamamoto Shin-Ichiroh
SIT. 307 Fukasaku, Minuma-ku, Saitama-City, 337-8570 Japan.
Annu Int Conf IEEE Eng Med Biol Soc. 2010;2010:4468-71. doi: 10.1109/IEMBS.2010.5625972.
The purpose of this study is to develop a body weight support gait training system for stroke and spinal cord injury. This system consists of a powered orthosis, treadmill and equipment of body weight support. Attachment of the powered orthosis is able to fit subject who has difference of body size. This powered orthosis is driven by pneumatic McKibben actuator. Actuators are arranged as pair of antagonistic bi-articular muscle model and two pairs of antagonistic mono-articular muscle model like human musculoskeletal system. Part of the equipment of body weight support suspend subject by wire harness, and body weight of subject is supported continuously by counter weight. The powered orthosis is attached equipment of body weight support by parallel linkage, and movement of the powered orthosis is limited at sagittal plane. Weight of the powered orthosis is compensated by parallel linkage with gas-spring. In this study, we developed system that has orthosis powered by pneumatic McKibben actuators and equipment of body weight support. We report detail of our developed body weight support gait training system.
本研究的目的是开发一种用于中风和脊髓损伤患者的体重支持步态训练系统。该系统由动力矫形器、跑步机和体重支持设备组成。动力矫形器的附件能够适配不同体型的受试者。这种动力矫形器由气动麦基本致动器驱动。致动器的布置方式类似于人体肌肉骨骼系统,采用一对拮抗双关节肌肉模型和两对拮抗单关节肌肉模型。体重支持设备的一部分通过线束悬吊受试者,受试者的体重由配重持续支撑。动力矫形器通过平行连杆连接体重支持设备,动力矫形器的运动限制在矢状面内。动力矫形器的重量由带有气弹簧的平行连杆进行补偿。在本研究中,我们开发了一种由气动麦基本致动器驱动的矫形器和体重支持设备的系统。我们报告了所开发的体重支持步态训练系统的详细情况。